Onshore Wind Farm Operational

Gopher Creek Wind Farm: 158 MW Onshore Wind Facility in Texas, USA

United States of America
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Overview

Gopher Creek Wind Farm is an operational onshore wind facility in Texas, United States, with a capacity of 158 MW, owned by Fluvanna Wind Energy 2 LLC.

Gopher Creek Wind Farm is an operational onshore wind facility located in Texas, United States. With a capacity of 158 MW, it represents a medium-scale wind energy project contributing to the state's renewable energy portfolio. The facility operates under the regulatory framework of the United States, including the Inflation Reduction Act (IRA) and Texas's Renewable Portfolio Standard (RPS), which supports wind energy development. Onshore wind farms like Gopher Creek typically use modern wind turbines to convert wind energy into electricity, feeding into the grid. The wind farm plays a role in diversifying the energy mix and reducing carbon emissions in the region. Its location in Texas, a leading state for wind power, benefits from strong wind resources and established grid infrastructure for renewable energy integration.

Environmental context

Wind farms like Gopher Creek can have visual impacts on the landscape and may affect local bird and bat populations. However, proper siting and mitigation measures can reduce these effects. The facility's operation supports renewable energy targets and helps displace fossil fuel generation, contributing to climate change mitigation.

Frequently asked questions

Gopher Creek Wind Farm is located in Texas, United States, at coordinates 32.8751, -101.2090.

Gopher Creek Wind Farm has a capacity of 158 megawatts (MW), making it a medium-scale onshore wind project.

Gopher Creek Wind Farm is owned by Fluvanna Wind Energy 2 LLC.

Wind energy in the US is supported by the Inflation Reduction Act (IRA) and state-level Renewable Portfolio Standards (RPS), such as Texas's RPS, which encourage renewable energy development.

Onshore wind farms can impact local wildlife, particularly birds and bats, and may have visual effects on the landscape. Proper siting and mitigation strategies help minimize these impacts.
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